首页> 外文期刊>Molecular biology of the cell >Sorting of yeast alpha 1,3 mannosyltransferase is mediated by a lumenal domain interaction, and a transmembrane domain signal that can confer clathrin-dependent Golgi localization to a secreted protein.
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Sorting of yeast alpha 1,3 mannosyltransferase is mediated by a lumenal domain interaction, and a transmembrane domain signal that can confer clathrin-dependent Golgi localization to a secreted protein.

机译:酵母α1,3甘露糖基转移酶的分选由腔结构域相互作用和跨膜结构域信号介导,该跨膜结构域信号可将网格蛋白依赖性高尔基体赋予分泌蛋白。

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alpha 1,3 mannosyltransferase (Mnn1p) is a type II integral membrane protein that is localized to the yeast Golgi complex. We have examined the signals within Mnn1p that mediate Golgi localization by expression of fusion proteins comprised of Mnn1p and the secreted protein invertase. The N-terminal transmembrane domain (TMD) of Mnn1p is sufficient to localize invertase to the Golgi complex by a mechanism that is not saturable by approximately 15-20 fold overexpression. Furthermore, the TMD-mediated localization mechanism is clathrin dependent, as an invertase fusion protein bearing only the Mnn1p TMD is mislocalized to the plasma membrane of a clathrin heavy chain mutant. The Mnn1-invertase fusion proteins are not retained in the Golgi complex as efficiently as Mnn1p, suggesting that other signals may be present in the wild-type protein. Indeed, the Mnn1p lumenal domain (Mnn1-s) is also localized to the Golgi complex when expressed as a functional, soluble protein by exchanging its TMD for a cleavable signal sequence. In contrast to the Mnn1-invertase fusion proteins, overexpression of Mnn1-s saturates its retention mechanism, and results in the partial secretion of this protein. These data indicate that Mnn1p has separable Golgi localization signals within both its transmembrane and lumenal domains.
机译:α1,3甘露糖基转移酶(Mnn1p)是位于酵母高尔基复合体的II型整合膜蛋白。我们已经检查了Mnn1p内的信号,该信号通过表达由Mnn1p和分泌的蛋白质转化酶组成的融合蛋白来介导高尔基体定位。 Mnn1p的N端跨膜结构域(TMD)足以通过不饱和约15-20倍过表达的机制将转化酶定位于高尔基体。此外,TMD介导的定位机制是网格蛋白依赖性的,因为仅携带Mnn1p TMD的转化酶融合蛋白会错位到网格蛋白重链突变体的质膜上。 Mnn1-转化酶融合蛋白没有像Mnn1p一样有效地保留在高尔基体中,这表明野生型蛋白中可能还存在其他信号。实际上,当通过将其TMD交换为可裂解的信号序列而表达为功能性可溶蛋白时,Mnn1p腔结构域(Mnn1-s)也位于高尔基复合体上。与Mnn1-转化酶融合蛋白相反,Mnn1-s的过表达饱和了其保留机制,并导致该蛋白的部分分泌。这些数据表明,Mnn1p在其跨膜结构域和管腔结构域中均具有可分离的高尔基体定位信号。

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